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New neurons for injured brains? The emergence of new genetic model organisms to study brain

机译:大脑受伤的新神经元?用于研究大脑的新型遗传模型生物的出现

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Neuronal circuits in the adult brain have long been viewed as static and stable. However, research in the past 20 years has shown that specialized regions of the adult brain, which harbor adult neural stem cells, continue to produce new neurons in a wide range of species. Brain plasticity is also observed after injury. Depending on the extent and permissive environment of neurogenic regions, different organisms show great variability in their capacity to replace lost neurons by endogenous neurogenesis. In Zebrafish and Drosophila, the formation of new neurons from progenitor cells in the adult brain was only discovered recently. Here, we compare properties of adult neural stem cells, their niches and regenerative responses from mammals to flies. Current models of brain injury have revealed that specific injury-induced genetic programs and comparison of neuronal fitness are implicated in brain repair. We highlight the potential of these recently implemented models of brain regeneration to identify novel regulators of stem cell activation and regenerative neurogenesis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:长期以来,成人大脑中的神经元回路一直被认为是静态且稳定的。但是,过去20年的研究表明,拥有成年神经干细胞的成年大脑的特殊区域继续在各种物种中产生新的神经元。受伤后也观察到脑可塑性。根据神经源性区域的程度和允许的环境,不同的生物体通过内源性神经发生替代失去的神经元的能力表现出很大的差异。在斑马鱼和果蝇中,成年大脑中的祖细胞形成了新的神经元。在这里,我们比较了成年神经干细胞的特性,它们的壁ni和从哺乳动物到果蝇的再生反应。当前的脑损伤模型表明,特定的损伤诱导基因程序和神经元适应性的比较与脑修复有关。我们强调了这些最近实施的脑再生模型的潜力,以鉴定干细胞活化和再生神经发生的新型调节剂。 (C)2015 Elsevier Ltd.保留所有权利。

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